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瞬时受体电位通道在心血管功能与疾病中的作用

Transient receptor potential channels in cardiovascular function and disease.

作者信息

Inoue Ryuji, Jensen Lars Jørn, Shi Juan, Morita Hiromitsu, Nishida Motohiro, Honda Akira, Ito Yushi

机构信息

Department of Physiology, Fukuoka University School of Medicine, Fukuoka 814-0180, Japan.

出版信息

Circ Res. 2006 Jul 21;99(2):119-31. doi: 10.1161/01.RES.0000233356.10630.8a.

Abstract

Sustained elevation in the intracellular Ca2+ concentration via Ca2+ influx, which is activated by a variety of mechanisms, plays a central regulatory role for cardiovascular functions. Recent molecular biological research has disclosed an unexpectedly diverse array of Ca(2+-entry channel molecules involved in this Ca2+ influx. These include more than ten transient receptor potential (TRP) superfamily members such as TRPC1, TRPC3-6, TRPV1, TRPV2, TRPV4, TRPM4, TRPM7, and polycystin (TRPP2). Most of them appear to be multimodally activated or modulated and show relevant features to both acute hemodynamic control and long-term remodeling of the cardiovascular system, and many of them have been found to respond not only to receptor stimulation but also to various forms of stimuli. There is good evidence to implicate TRPC1 in neointimal hyperplasia after vascular injury via store-depletion-operated Ca2+ entry. TRPC6 likely contributes to receptor-operated and mechanosensitive Ca2+ mobilizations, being involved in vasoconstrictor and myogenic responses and pulmonary arterial proliferation and its associated disease (idiopathic pulmonary arterial hypertension). Considerable evidence has also been accumulated for unique involvement of TRPV1 in blood flow/pressure regulation via sensory vasoactive neuropeptide release. New lines of evidence suggest that TRPV2 may act as a Ca2+-overloading pathway associated with dystrophic cardiomyopathy, TRPV4 as a mediator of endothelium-dependent hyperpolarization, TRPM7 as a proproliferative vascular Mg2+ entry channel, and TRPP2 as a Ca2+-entry channel requisite for vascular integrity. This review attempts to provide an overview of the current knowledge on TRP proteins and discuss their possible roles in cardiovascular functions and diseases.

摘要

通过多种机制激活的细胞外钙离子内流导致细胞内钙离子浓度持续升高,这对心血管功能起着核心调节作用。最近的分子生物学研究揭示了一系列参与这种钙离子内流的钙离子进入通道分子,其种类之多出乎意料。这些分子包括十多种瞬时受体电位(TRP)超家族成员,如TRPC1、TRPC3 - 6、TRPV1、TRPV2、TRPV4、TRPM4、TRPM7和多囊蛋白(TRPP2)。它们中的大多数似乎受到多模式激活或调节,并且在急性血流动力学控制和心血管系统的长期重塑方面都表现出相关特征,而且许多分子不仅对受体刺激有反应,还对各种形式的刺激有反应。有充分证据表明,TRPC1通过储存耗竭性钙离子内流参与血管损伤后的内膜增生。TRPC6可能参与受体介导和机械敏感性钙离子动员,涉及血管收缩和肌源性反应以及肺动脉增殖及其相关疾病(特发性肺动脉高压)。也有大量证据表明TRPV1通过感觉血管活性神经肽释放独特地参与血流/压力调节。新的证据表明,TRPV2可能作为与营养不良性心肌病相关的钙离子超载途径,TRPV4作为内皮依赖性超极化的介质,TRPM7作为促增殖性血管镁离子进入通道,而TRPP2作为血管完整性所需的钙离子进入通道。本综述试图概述关于TRP蛋白的当前知识,并讨论它们在心血管功能和疾病中的可能作用。

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